Title :
Content-aware instantly decodable network coding over wireless networks
Author :
Keshtkarjahromi, Yasaman ; Seferoglu, Hulya ; Ansari, Rashid ; Khokhar, Ashfaq
Author_Institution :
ECE Dept., Univ. of Illinois at Chicago, Chicago, IL, USA
Abstract :
Consider a scenario of broadcasting a common content to a group of cooperating wireless nodes that are within proximity of each other. Nodes in this group may receive partial content from the source due to packet losses over wireless broadcast links. We further consider that packet losses are different for different nodes. The remaining missing content at each node can then be recovered, thanks to cooperation among the nodes. In this context, the minimum amount of time that can guarantee a complete acquisition of the common content at every node is referred to as the "completion time". It has been shown that instantly decodable network coding (IDNC) reduces the completion time as compared to no network coding in this scenario. Yet, for applications such as video streaming, not all packets have the same importance and not all users are interested in the same quality of content. This problem is even more interesting when additional, but realistic constraints, such as strict deadline, bandwidth, or limited energy are added in the problem formulation. We assert that direct application of IDNC in such a scenario yields poor performance in terms of content quality and completion time. In this paper, we propose a novel Content-Aware IDNC scheme that improves content quality and network coding opportunities jointly by taking into account importance of each packet towards the desired quality of service (QoS). Our proposed Content-Aware IDNC (i) maximizes the quality under the completion time constraint, and (ii) minimizes the completion time under the quality constraint. We demonstrate the benefits of Content-Aware IDNC through simulations.
Keywords :
broadcast channels; cooperative communication; decoding; network coding; quality of service; radio networks; video streaming; QoS; completion time constraint; content quality; content-aware IDNC scheme; content-aware instantly decodable network coding; cooperating wireless nodes; packet losses; quality of service; video streaming; wireless broadcast links; wireless networks; Network coding; Packet loss; Time factors; Upper bound; Vectors; Wireless communication;
Conference_Titel :
Computing, Networking and Communications (ICNC), 2015 International Conference on
Conference_Location :
Garden Grove, CA
DOI :
10.1109/ICCNC.2015.7069449